1. Petija, R., Fecil’ak, P., Jakab, F., Michalko, M., Critical analysis of communication protocols to support the quality of services in IoT-based infrastructures, 2019 In: 17th International Conference on Emerging eLearning Technologies and Applications (ICETA), Starý Smokovec, Slovakia, pp. 612–617, doi: https://doi.org/10.1109/ICETA48886.2019.9039989. (2019)
2. Moreano, A.; Design and implementation of a distributed system using object-oriented industrial communication protocol (IOT), for remote control and monitoring in real time (RT) through the web in the hydronics and neutronics laboratory of the universidad de las fuerzas armadas - ESPE Latacunga Extension, Universidad de las Fuerzas Armadas ESPE., (2019).http://repositorio.espe.edu.ec/handle/21000/15631
3. Zambrano, Y.; Redesign of the automation and implementation of a local web SCADA system for the water dispensing process at AQUAHER S.A., Rocafuerte canton, Universidad de las Fuerzas Armadas ESPE., (2022).http://repositorio.espe.edu.ec/handle/21000/32042
4. Jiménez, E.; Guevara, B.; Modeling and construction of a didactic process control module for the development of industrial communications tests of physical variables in the Hydraulics and Neutronics laboratory at the Universidad de las Fuerzas Armadas ESPE Latacunga branch, Universidad de las Fuerzas Armadas ESPE., (2021).http://repositorio.espe.edu.ec/handle/21000/24269
5. Cachago, J.: Implementation of a modbus TCP communication system between PLC S7–300 and S7–1200, Universidad de las Fuerzas Armadas ESPE., (2020).http://repositorio.espe.edu.ec/handle/21000/25824